Owing to their chemical and magnetic properties, magnetite nanoparticles are an interesting adsorbing material for biomolecules. The understanding of the interactions of simple biomolecules with inorganic nanoparticles is an important approach for research on the bio-nano interface and can constitute the fundamentals to manifold applications in biotechnology, medicine and catalysis. The aim of the work presented here is to compare the interaction of seven different amino acids (l-alanine, l-cysteine, l-glutamic acid, glycine, l-histidine, l-lysine, and l-serine) with magnetite nanoparticles in a colloidal system at pH 6. We investigate the influence of the side chain on the adsorption at a magnetite–water interface with incubation experimen...
Surface sensitive X-ray scattering and spectroscopic studies have been conducted to determine struct...
Materials obtained by the synergistic combination of nanotechnology and biomedicine are an important...
Owing to Mössbauer spectroscopy, an advanced characterization technique for iron-containing material...
The affinity of biomolecules, such as peptides and proteins, with inorganic surfaces, is a fundament...
The use of iron oxide magnetic nanoparticles, in particular magnetite nanoparticles (MNPs), has attr...
The affinity of biomolecules, such as peptides and proteins, with inorganic surfaces, is a fundament...
Superparamagnetic iron oxide nanoparticles for biomedical applications are usually coated with organ...
An adsorption of magnetic nanoparticles (MNP) from electrostatically stabilized aqueous ferrofluids ...
The surface of magnetite (Fe3O4, d = 6:3 ± 0:7 nm) nanoparticles dispersed in cyclohexane was studie...
The interaction strength of progressively longer oligomers of glycine, (Gly), di-Gly, tri-Gly, and p...
Abstract Magnetite nanoparticles were prepared by coprecipitation of Fe 2' and Fe 3' with ...
Magnetite is a versatile transition metal oxide with applications in catalysis, biomedical imaging a...
Size, shape and surface characteristics strongly affect interfacial interactions, as the presented a...
an advanced characterization technique for iron-containing materials, the present study reveals prev...
In this article, we investigated the interactions between oxidized single-wall carbon nanotubes and ...
Surface sensitive X-ray scattering and spectroscopic studies have been conducted to determine struct...
Materials obtained by the synergistic combination of nanotechnology and biomedicine are an important...
Owing to Mössbauer spectroscopy, an advanced characterization technique for iron-containing material...
The affinity of biomolecules, such as peptides and proteins, with inorganic surfaces, is a fundament...
The use of iron oxide magnetic nanoparticles, in particular magnetite nanoparticles (MNPs), has attr...
The affinity of biomolecules, such as peptides and proteins, with inorganic surfaces, is a fundament...
Superparamagnetic iron oxide nanoparticles for biomedical applications are usually coated with organ...
An adsorption of magnetic nanoparticles (MNP) from electrostatically stabilized aqueous ferrofluids ...
The surface of magnetite (Fe3O4, d = 6:3 ± 0:7 nm) nanoparticles dispersed in cyclohexane was studie...
The interaction strength of progressively longer oligomers of glycine, (Gly), di-Gly, tri-Gly, and p...
Abstract Magnetite nanoparticles were prepared by coprecipitation of Fe 2' and Fe 3' with ...
Magnetite is a versatile transition metal oxide with applications in catalysis, biomedical imaging a...
Size, shape and surface characteristics strongly affect interfacial interactions, as the presented a...
an advanced characterization technique for iron-containing materials, the present study reveals prev...
In this article, we investigated the interactions between oxidized single-wall carbon nanotubes and ...
Surface sensitive X-ray scattering and spectroscopic studies have been conducted to determine struct...
Materials obtained by the synergistic combination of nanotechnology and biomedicine are an important...
Owing to Mössbauer spectroscopy, an advanced characterization technique for iron-containing material...